WO2016008164A1 - Procédé de transmission de signal, appareil d'extension d'interface et système de communication - Google Patents
Procédé de transmission de signal, appareil d'extension d'interface et système de communication Download PDFInfo
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- WO2016008164A1 WO2016008164A1 PCT/CN2014/082560 CN2014082560W WO2016008164A1 WO 2016008164 A1 WO2016008164 A1 WO 2016008164A1 CN 2014082560 W CN2014082560 W CN 2014082560W WO 2016008164 A1 WO2016008164 A1 WO 2016008164A1
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- ret
- control device
- control signal
- interface
- base station
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- 238000004891 communication Methods 0.000 title claims abstract description 52
- 238000000034 method Methods 0.000 title claims abstract description 21
- 230000008054 signal transmission Effects 0.000 title claims abstract description 11
- 238000013507 mapping Methods 0.000 claims abstract description 36
- 238000012545 processing Methods 0.000 claims description 27
- 230000008520 organization Effects 0.000 claims description 12
- 238000002165 resonance energy transfer Methods 0.000 claims description 2
- 230000008878 coupling Effects 0.000 description 3
- 238000010168 coupling process Methods 0.000 description 3
- 238000005859 coupling reaction Methods 0.000 description 3
- 238000010586 diagram Methods 0.000 description 3
- 230000005540 biological transmission Effects 0.000 description 2
- 239000000306 component Substances 0.000 description 1
- 239000008358 core component Substances 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000006870 function Effects 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 230000006855 networking Effects 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 238000001228 spectrum Methods 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q3/00—Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system
- H01Q3/005—Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system using remotely controlled antenna positioning or scanning
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01Q—ANTENNAS, i.e. RADIO AERIALS
- H01Q1/00—Details of, or arrangements associated with, antennas
- H01Q1/12—Supports; Mounting means
- H01Q1/22—Supports; Mounting means by structural association with other equipment or articles
- H01Q1/24—Supports; Mounting means by structural association with other equipment or articles with receiving set
- H01Q1/241—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
- H01Q1/246—Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for base stations
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W16/00—Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
- H04W16/24—Cell structures
- H04W16/28—Cell structures using beam steering
Definitions
- the present invention relates to the field of communications, and in particular, to a signal transmission method, an interface extension apparatus, and a communication system.
- An electric adjustable antenna refers to a mobile antenna that uses an electronically adjusted electric downtilt angle.
- the remote control unit is a core component for performing antenna downtilt adjustment and remote real-time monitoring of an antenna state.
- RCU remote control unit
- network coverage can be effectively enhanced and optimized.
- multi-frequency ESC antennas have become an important development direction of wireless base station antennas. As the number of wireless base station antennas increases, base station sites will appear. In order to save the space of the sky, the multi-frequency antenna and multi-base station antenna feeder networking method have become an effective means to solve this problem.
- the ESC antenna can adjust the electric downtilt angle remotely, there is no need to manually climb the tower.
- the application of multi-frequency ESC antennas in the antenna network of wireless networks is becoming more and more popular.
- most multi-frequency ESC antennas only provide an Antenna Interface Standards Grou (AISG) interface, so that multi-frequency ESC antennas can only establish communication connections with one base station, making multi-frequency ESC antennas unable to adapt.
- the base station shares the antenna feed and satisfies the need to independently control the electrical downtilt.
- Embodiments of the present invention provide a signal transmission method, an interface extension apparatus, and a communication system, which can solve the problem that a multi-frequency electronically modulated antenna having only one AISG interface cannot communicate with a plurality of base stations at the same time.
- the first aspect provides an interface expansion apparatus, including: a transceiver module, configured to acquire device information of each of the plurality of remote electrical downtilt RET control devices; a processing module, configured to create a proxy for each RET control device according to the device information of each RET control device, where each RET control device has a mapping relationship with the corresponding proxy; The module is further configured to receive a control signal from the at least one base station, where the control signal carries RET identification information, where the processing module is configured to determine, according to the RET identification information carried by the control signal, a first RET control that receives the control signal.
- the processing module is configured to pass the first
- the proxy corresponding to the RET control device modulates the control signal to obtain a modulated control signal.
- the transceiver module is further configured to send the modulated control signal to the first RET control device.
- the transceiver module is configured to:
- the interface expansion device and the at least one base station adopt an antenna interface standard organization AISG
- the protocol communicates, and the interface extension device communicates with the RET control device using an AISG protocol.
- the control signal includes a data chain that is sent by the at least one base station Road layer messages and application layer messages.
- the device information includes a device serial number of the corresponding RET control device , device type and antenna band.
- an interface expansion apparatus including:
- N input interfaces for respectively connecting N base stations
- each AISG communication bus is connected with P antenna ESC modules, and each antenna ESC module includes L remote control units RCU, each of which includes more a remote electric downtilt RET control device, wherein the P, M, N, and L are positive integers greater than or equal to 1, and N is greater than or equal to M;
- the M output interfaces are configured to acquire device information of each of the plurality of RET control devices, and the processor is configured to: each device information according to the device information of each RET control device
- the control device creates a proxy, and each of the RET control devices has a mapping relationship with the corresponding proxy;
- the N input interfaces are configured to receive a control signal from the at least one base station, where the control signal carries the RET identifier information
- the processor is further configured to: determine, according to the RET identifier information carried by the control signal, to receive the a first RET control device that controls a signal, and determines, according to the mapping relationship between each of the RET control devices and a corresponding agent, an agent corresponding to the first RET control device, where the processing module uses And modulating the control signal by a proxy corresponding to the first RET control device to obtain a modulated control signal
- the M output interfaces are further configured to send the modulated control signal to the The first RET control device is described.
- the M output interfaces are configured to: perform scheduling on the modulated control signal, to perform multiple corresponding to the at least one base station
- the modulated control signal is sent serially to the corresponding RET control device.
- the receiving extension device establishes communication between the antenna ESC module and the at least one base station on the N input interfaces and the M output interfaces by using a standard protocol. Connecting, so that the N base stations simultaneously manage the P antenna tones module.
- the standard protocol is an antenna interface standard organization AISG protocol.
- the third possible implementation manner of the second aspect Road layer messages and application layer messages.
- the fourth possible implementation manner of the second aspect , device type and antenna band.
- a communication system in a third aspect, includes an interface expansion device, at least one remote electric downtilt RET control device, and at least one base station, and an input interface of the interface expansion device is connected to the base station, An output interface of the interface expansion device is connected to the RET control device, where: the interface expansion device is configured to acquire device information of each RET control device, and according to the device information of each RET control device, each of the RETs The control device creates a proxy, and each of the RET control devices has a mapping relationship with the corresponding proxy; the at least one base station is configured to send a control signal to the interface extension device, where the control signal carries RET identifier information; The interface extension device is further configured to determine, according to the RET identification information carried by the control signal, a first RET control device that receives the control signal, and according to the relationship between each RET control device and a corresponding proxy Determining, by the mapping relationship, an agent corresponding to the first RET control device, and further by using the
- the interface expansion apparatus when powering on, sends a scan signal to each RET control device connected to the output interface to obtain the each RET controls the device information of the device.
- the interface expansion apparatus when transmitting the modulated control signal, The modulated control signal is scheduled to serially transmit the plurality of modulated control signals corresponding to the at least one base station to the corresponding RET control device.
- an antenna is used between the interface expansion apparatus and the at least one base station
- the interface standard organization AISG protocol communicates, and the interface extension device communicates with the RET control device using the AISG protocol.
- the control signal includes a data link that is sent by the at least one base station Layer messages and application layer messages.
- the device information includes a device serial number and a device type of the corresponding RET And antenna band.
- a signal transmission method including: an interface expansion device acquiring device information of each of a plurality of remote electrical downtilt RET control devices; the interface expansion device according to each of the RET controls The device information of the device respectively creates a proxy for each of the RET control devices, and each of the RET control devices and corresponding a mapping relationship exists between the agents; the interface extension device receives a control signal from the at least one base station, the control signal carries RET identification information; and the interface extension device is configured according to the RET identification message carried by the control signal, Determining a first RET control device that receives the control signal, and determining an agent corresponding to the first RET control device according to the mapping relationship between each of the RET control devices and a corresponding agent, and further The control signal is modulated by a proxy corresponding to the first RET control device to obtain a modulated control signal, and the modulated control signal is sent to the first RET control device.
- the sending, by the interface expansion device, the modulated control signal to the first RET control device The control signal is scheduled to serially transmit the plurality of modulated control signals corresponding to the at least one base station to the corresponding RET control device.
- the interface expansion device and the at least one base station adopt an antenna interface standard organization AISG
- the protocol communicates, and the interface extension device communicates with the RET control device using an AISG protocol.
- control signal includes a data chain that is sent by the at least one base station Road layer messages and application layer messages.
- the device information includes a device serial number of the corresponding RET control device , device type and antenna band.
- An embodiment of the present invention provides a signal transmission method, an interface expansion apparatus, and a communication system, including an interface expansion apparatus, at least one base station, and at least one RET.
- the interface expansion apparatus includes N input interfaces and M output interfaces, and an interface expansion device input.
- the output interface is connected to the RET
- the interface expansion device acquires device information of each RET control device of the plurality of RET control devices, and creates a proxy for each RET control device according to device information of each RET control device, A mapping relationship exists between each RET control device and the corresponding proxy, and then the interface extension device receives a control signal from the at least one base station, the control signal carries the RET identification information, and determines the first of the received control signals according to the RET identification information carried by the control signal.
- the RET controls the device, and determines a proxy corresponding to the first RET control device according to a mapping relationship between each RET control device and a corresponding proxy, and the processing module is configured to use the proxy pair corresponding to the first RET control device
- the control signal is modulated to obtain a modulated control signal, and the modulated control signal is sent to the first RET control device, so that the prior art multi-frequency electronically modulated antenna has only one interface, and the extended interface is
- the extension device establishes a communication connection between the base station and the RET, the connection
- the extension device is connected to the at least one base station, and the control signal of the base station is sent to the corresponding RET through the proxy in a manner of establishing a proxy of each RET, so that the interface extension device can provide the interface provided by the multi-frequency electrical adjustment antenna itself insufficiently.
- the interface extension device can simultaneously communicate with a plurality of base stations.
- FIG. 1 is a schematic structural diagram of an interface expansion apparatus according to an embodiment of the present invention
- FIG. 2 is a schematic structural diagram of another interface expansion apparatus according to another embodiment of the present invention.
- FIG. 3 is a schematic diagram of a communication system according to another embodiment of the present invention.
- FIG. 4 is a schematic flow chart of a signal transmission method according to another embodiment of the present invention.
- An embodiment of the present invention provides an interface expansion apparatus 10, as shown in FIG. 1, including a transceiver module 101 and a processing module 102, wherein: a transceiver module 101 is configured to acquire each RET in a plurality of remote electrical downtilt RET control devices.
- the processing module 102 is configured to create a proxy for each RET control device according to the device information of each RET control device, and each RET control device has a mapping relationship with the corresponding proxy; the transceiver module 101, The method further includes: receiving, by the at least one base station, a control signal, where the control signal carries the RET identification information; the processing module 102 is further configured to determine, according to the RET identification information carried by the control signal, the first RET control device that receives the control signal, and according to each RET control Determining a proxy corresponding to the first RET control device by using a mapping relationship between the device and the corresponding proxy, the processing module configured to modulate the control signal by using a proxy corresponding to the first RET control device, to obtain modulated control
- the transceiver module 101 is further configured to send the modulated control signal to the first RET control device.
- the RET Expansion Unit (REU) 10 has a plurality of input interfaces and at least one output interface.
- the input interfaces are respectively connected to the base station, and the output interface is connected to a remote Electrical Tilting (RET) control device.
- the RET control device can perform electrical downtilt angle adjustment according to the control signal sent by the base station.
- the transceiver module 101 acquires device information of each RET control device.
- the implementation manner may be: when the extension device 10 is powered on and connected to the RET control device, sending a scan signal to each RET control device to obtain device information of each RET control device.
- the RET control device can be implemented by using a 485 communication protocol.
- the interface expansion device 10 is equivalent to a master device, and each RET control device is equivalent to a slave device, and the master device can connect multiple RET controls through a bus.
- the device information may include, but is not limited to, a device serial number, a device type, an antenna frequency band, and the like of the RET control device.
- the device type may include a RET control device as a single band RET control device or a multi-band RET control device. Further, after the transceiver module 101 obtains the device information of each RET control device, the processing module 102 may allocate an address for each RET according to the device information of each RET control device, and then assign the assigned address according to the device information. It is sent to each RET control device so that the nb port expansion device 10 communicates with each RET control device according to the assigned address. At the same time, the processing module 102 can create a proxy for each RET according to the device information of each RET control device, and each proxy includes device information corresponding to each RET control device, and the proxy is used by the processing module 102 according to the proxy pair.
- the control signal received from the base station is modulated to obtain a control signal for transmission between the RET control device suitable for the interface extension device and the corresponding reception control signal.
- the control signal herein may include a data link layer message and an application layer message sent by the base station to the RET control device.
- the processing module 102 is configured between the interface extension device 10 and the RET control device according to the communication address, the command code, and the like set by the interface extension device and the base station when the data link layer message sent by the base station is implemented by the proxy.
- the fixed communication address, the command code, and the like are different.
- the interface extension device 10 modulates the data link layer message, and replaces the communication address, the command code, and the like with the RET control.
- the interface extension device 10 forwards the application layer message between the base station and the RET control device according to the information of the corresponding proxy. That is, this The invention establishes a communication relationship between the base station and the RET control device by means of a proxy, and the number and type of the agents and the number and type of the corresponding RET control devices are consistent.
- each RET control device When the processing module 102 establishes a corresponding proxy for each RET control device, the mapping relationship between each RET control device and the corresponding proxy is also established, so that the transceiver module 101 receives the control signal sent by at least one base station.
- Each control signal includes identification information of the corresponding RET, and the processing module 102 can determine the first RET control device corresponding to the received control signal according to the identification information, and further according to the mapping relationship between each RET control device and the corresponding agent.
- a proxy corresponding to the first RET control device is determined to modulate a control signal received from the base station by a proxy corresponding to the first RET control device.
- the identification information here may be the serial number of the corresponding RET or the like.
- the transceiver module 101 can send the modulated control signal to the corresponding RET control device according to the address allocated by the processing module 102 for each RET.
- the interface expansion device 10 has multiple input interfaces, multiple input interfaces are respectively connected to one base station master device, so that when multiple base stations simultaneously manage the RET control device, since multiple RET control devices pass one
- the transceiver module 101 can schedule the control signals modulated by the plurality of base stations to The corresponding modulated control signal is serially transmitted to the corresponding RET control device, that is, serialized communication requests initiated by multiple base stations simultaneously.
- the interface extension device can communicate with the base station and the RET control device by using an antenna interface standard organization AISG protocol.
- the interface expansion device 10 can support communication with a different manufacturer's RET control device.
- the RET control device After receiving the control signal sent by the corresponding base station, the RET control device performs the antenna electric downtilt adjustment according to the control signal. After the adjustment is completed, the corresponding base station in the interface expansion device sends the corresponding base station to the corresponding base station. The RET sends a feedback signal in the same way as the feedback signal.
- the base station before the base station sends the control signal to the RET control device, when the communication system of the base station, the interface extension device and the RET is powered on, the base station can obtain the information of each agent in the interface expansion device by scanning, so as to be in the direction
- the RET control device sends a control signal
- the control signal is first sent to the corresponding agent of the RET control device for modulation, and the modulated control signal is obtained.
- An embodiment of the present invention provides an interface expansion apparatus.
- the input interface of the interface expansion apparatus is connected to the base station, and the output interface is connected to the RET.
- the interface expansion apparatus acquires device information of each RET control device in the multiple RET control devices, according to each RET.
- the device information of the control device respectively creates a proxy for each RET control device, and each RET control device has a mapping relationship with the corresponding proxy, and then the interface extension device receives a control signal from at least one base station, and the control signal carries the RET identification information.
- the module is configured to modulate the control signal by a proxy corresponding to the first RET control device to obtain a modulated control signal, and send the modulated control signal to the first RET control device, thus, in the prior art Multi-frequency ESC antenna has only one interface, through the expansion interface
- the extension device establishes a communication connection between the base station and the RET, and the interface extension device is connected to the at least one base station to send a control signal of the base station to the corresponding RET through a proxy in a manner of establishing a proxy for each RET, enabling the interface extension device
- the interface extension device can simultaneously communicate with a plurality of base stations. Based on the description of the interface expansion device in the
- each AISSG communication bus is connected with P antenna ESC modules
- each antenna ESC module includes L remote control units RCU
- each RCU includes multiple A remote electric downtilt RET control device, wherein P, M, N, and L are positive integers greater than or equal to 1, and N is greater than or equal to M.
- M output interfaces 202 are configured to acquire device information of each RET control device in the plurality of remote electrical downtilt RET control devices.
- the processor 203 is configured to separately create a proxy for each RET control device according to the device information of each RET control device, and each RET control device has a mapping relationship with the corresponding proxy.
- N input interfaces are configured to receive control signals from at least one base station, and the control signals carry RET identification information.
- the processor 203 is further configured to: determine, according to the RET identification information carried by the control signal, the first RET control device that receives the control signal, and determine the first RET control according to the mapping relationship between each RET control device and the corresponding proxy.
- the agent corresponding to the device, the processing module is configured to modulate the control signal by a proxy corresponding to the first RET control device to obtain a modulated control signal.
- the M output interfaces 202 are further configured to send the modulated control signals to the first RET control device.
- N can be 3, M can be 1 or other values, which is not limited here.
- each antenna ESC module comprises L RCUs, a transmission structure and a phase shifter. Multiple RET control devices are included in each RCU.
- the M output interfaces 202 can be configured to: schedule the modulated control signal to serially send the plurality of modulated control signals corresponding to the at least one base station to the corresponding RET control device through the M output interfaces. Ready.
- the receiving extension device establishes a communication connection between the antenna ESC module and the at least one base station by using one of the input interfaces and the one output interface by using a standard protocol, so that the two base stations simultaneously manage the two antenna ESC modules.
- the standard protocol is the antenna interface standard organization AISG protocol.
- the control signal includes a data link layer message and an application layer message sent by the at least one base station.
- the device information includes a device serial number, a device type, and an antenna frequency band of the corresponding RET control device.
- the identification information here may be the serial number of the corresponding RET, and the like.
- one base station correspondingly controls one RET control device, where the first RET control device refers to a RET control device corresponding to each base station that transmits the control signal.
- the output interface and the input interface in this embodiment refer to the transceiver module in the embodiment shown in FIG. 1.
- the processing module in the embodiment shown in FIG. 1 refers to the processing module in the embodiment shown in FIG.
- the embodiment of the invention provides an interface expansion device.
- the interface expansion device includes N input interfaces and M output interfaces.
- the input interface of the interface expansion device is connected with the base station, the output interface is connected with the RET, and the interface expansion device acquires multiple RET control devices.
- each RET control device receives a control signal, the control signal carries RET identification information, determines a first RET control device that receives the control signal according to the RET identification information carried by the control signal, and according to a mapping relationship between each RET control device and a corresponding agent Determining an agent corresponding to the first RET control device, wherein the processing module is configured to modulate the control signal by a proxy corresponding to the first RET control device to obtain a modulated control signal, and the modulated control signal Sending to the first RET control device, so that in the case that the prior art multi-frequency electronically tuned antenna has only one interface, the communication connection between the base station and the RET is established by the extended interface expansion device, and the interface expansion device At least one base station is connected, and the control signal of the base station is sent to
- the embodiment of the present invention provides a communication system 3, as shown in FIG. 3, based on the implementation of the interface expansion apparatus, the base station, and the RET control device in the embodiment shown in FIG.
- the interface expansion device 30 includes at least one remote electric downtilt RET control device 31 and at least one base station 32.
- the input interface of the interface expansion device 30 is connected to the base station 32, and the output interface of the interface expansion device 30 is connected to the RET control device 31.
- the interface expansion device is configured to obtain device information of each RET control device, and create a proxy for each RET control device according to device information of each RET control device, and each RET control device has a mapping relationship with the corresponding proxy;
- At least one base station is configured to send a control signal to the interface extension device, where the control signal carries the RET identification information; the interface extension device is further configured to determine, according to the RET identification information carried by the control signal, the first RET control device that receives the control signal, and according to each RET Controlling a mapping relationship between the device and the corresponding agent, determining a proxy corresponding to the first RET control device, and modulating the control signal by a proxy corresponding to the first RET control device to obtain a modulated control signal;
- the interface expansion device is further configured to send the modulated control signal to the first RET control device;
- the first RET control device is used to perform antenna electric downtilt adjustment according to the control signal. Further, the interface expansion device sends a scan signal to each RET control device connected to the output interface to obtain each RET control device connected to the output interface at power-on. Equipment information.
- the interface expansion device schedules the modulated control signal to serially transmit the plurality of modulated control signals corresponding to the at least one base station to the corresponding RET control device.
- the interface expansion device communicates with the at least one base station by using an antenna interface standard organization AISG protocol, and the interface expansion device communicates with the RET control device by using an AISG protocol.
- the control signal includes a data link layer message and an application layer message sent by the base station.
- the device information may include the device serial number, device type, and antenna band of the corresponding RET.
- the identification information here may be the serial number of the corresponding RET or the like.
- An embodiment of the present invention provides a communication system, including an interface expansion apparatus, at least one base station, and at least one RET, an input interface of an interface expansion apparatus and a base station connection, and an output interface is connected to the RET, and the interface expansion apparatus acquires each of the plurality of RET control apparatuses.
- the device information of the RET control device respectively, creates a proxy for each RET control device according to the device information of each RET control device, and each RET control device has a mapping relationship with the corresponding proxy, and then the interface expansion device is from at least one
- the base station receives the control signal, and the control signal carries the RET identification information, determines the first RET control device that receives the control signal according to the RET identification information carried by the control signal, and determines according to the mapping relationship between each RET control device and the corresponding proxy.
- an embodiment of the present invention provides a signal transmission method. As shown in FIG. 4, the method includes:
- the interface expansion device acquires device information of each RET control device in the plurality of remote electric downtilt RET control devices.
- the interface expansion device creates a proxy for each RET control device according to the device information of each RET control device, and each RET control device has a mapping relationship with the corresponding proxy.
- the interface extension device receives a control signal from at least one base station, and the control signal carries the RET identification information.
- the interface extension device determines, according to the RET identifier information carried by the control signal, the first RET control device that receives the control signal, and determines, according to the mapping relationship between each RET control device and the corresponding proxy, that the first RET control device is The corresponding agent further modulates the control signal by a proxy corresponding to the first RET control device to obtain a modulated control signal, and then transmits the modulated control signal to the first RET control device.
- a specific implementation manner of transmitting the modulated control signal to the first RET control device may be:
- the interface extension device schedules the modulated control signal to serially transmit the plurality of modulated control signals corresponding to the at least one base station to the corresponding RET control device.
- the interface expansion device and the at least one base station can use the antenna interface standard organization AISG protocol for communication, and the interface expansion device and the RET control device also use the AISG protocol for communication, and can implement the interface expansion device and the antenna of the different manufacturer. Interoperability.
- the control signal herein may include a data link layer cancellation sent by at least one base station, and an application layer message.
- the device information includes a device serial number, a device type, and an antenna frequency band of the corresponding RET control device.
- the identification information here may be the serial number of the corresponding RET or the like.
- an embodiment of the present invention provides a signal transmission method, where an interface extension device acquires device information of each RET control device in a plurality of RET control devices, and creates a proxy for each RET control device according to device information of each RET control device.
- the RET control device has a mapping relationship with the corresponding agent, and then the interface extension device receives the control signal from the at least one base station, the control signal carries the RET identification information, and determines the first RET of the received control signal according to the RET identification information carried by the control signal.
- the signal is modulated to obtain a modulated control signal, and the modulated control signal is sent to the first RET control device, so that when the prior art multi-frequency electronically modulated antenna has only one interface, the extended interface is extended.
- the device establishes a communication connection between the base station and the RET, and the interface is extended
- the device is connected to the at least one base station, and the control signal of the base station is sent to the corresponding RET through the proxy in a manner of establishing a proxy of each RET, so that the interface extension device can pass the interface provided by the multi-frequency electrical adjustment antenna itself.
- the interface extension device can communicate with multiple base stations at the same time.
- each functional unit may be integrated into one processing unit, or each unit may be physically included, or two or more units may be integrated into one unit.
- the above units may be implemented in the form of hardware or in the form of hardware plus software functional units. All or part of the steps of implementing the above method embodiments may be performed by hardware related to the program instructions.
- the foregoing program may be stored in a computer readable storage medium, and when executed, the program includes the steps of the foregoing method embodiments;
- the foregoing storage medium includes: a USB flash drive, a removable hard disk, a Read Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk, or an optical disk, and the like, which can store program codes. medium.
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Abstract
L'invention concerne un procédé de transmission de signal, un appareil d'extension d'interface et un système de communication, qui ont trait au domaine des communications et peuvent résoudre le problème qui est qu'une antenne à inclinaison électrique multi-fréquence pourvue d'une seule interface AISG ne peut pas communiquer simultanément avec une pluralité de stations de base. L'appareil d'extension d'interface comprend N interfaces d'entrée et M interfaces de sortie ; les interfaces d'entrée sont connectées à au moins une station de base ; les interfaces de sortie sont connectées à un mécanisme d'inclinaison électrique à distance (RET) ; par acquisition d'informations de dispositif concernant chaque dispositif de commande RET d'une pluralité de dispositifs de commande RET, un mandataire est créé respectivement pour chaque dispositif de commande RET en fonction des informations de dispositif, et il existe une relation de correspondance entre chaque dispositif de commande RET et un mandataire correspondant ; et ensuite, un signal de commande reçu en provenance d'au moins une station de base est modulé par l'intermédiaire du mandataire correspondant au dispositif de commande RET, ce qui permet d'envoyer le signal de commande modulé à un RET correspondant. Les modes de réalisation de la présente invention sont utilisés pour gérer une antenne à inclinaison électrique multi-fréquence par une pluralité de stations de base en même temps.
Priority Applications (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2014/082560 WO2016008164A1 (fr) | 2014-07-18 | 2014-07-18 | Procédé de transmission de signal, appareil d'extension d'interface et système de communication |
| CN201480012516.6A CN105517667B (zh) | 2014-07-18 | 2014-07-18 | 一种信号传输方法、接口扩展装置和通信系统 |
| EP14897554.3A EP3157099A4 (fr) | 2014-07-18 | 2014-07-18 | Procédé de transmission de signal, appareil d'extension d'interface et système de communication |
| US15/407,495 US9899735B2 (en) | 2014-07-18 | 2017-01-17 | Signal transmission method, interface extension apparatus, and communications system |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2014/082560 WO2016008164A1 (fr) | 2014-07-18 | 2014-07-18 | Procédé de transmission de signal, appareil d'extension d'interface et système de communication |
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| Application Number | Title | Priority Date | Filing Date |
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| US15/407,495 Continuation US9899735B2 (en) | 2014-07-18 | 2017-01-17 | Signal transmission method, interface extension apparatus, and communications system |
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| WO2016008164A1 true WO2016008164A1 (fr) | 2016-01-21 |
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| PCT/CN2014/082560 WO2016008164A1 (fr) | 2014-07-18 | 2014-07-18 | Procédé de transmission de signal, appareil d'extension d'interface et système de communication |
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| US (1) | US9899735B2 (fr) |
| EP (1) | EP3157099A4 (fr) |
| CN (1) | CN105517667B (fr) |
| WO (1) | WO2016008164A1 (fr) |
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| MX358256B (es) * | 2014-03-10 | 2018-08-09 | Huawei Tech Co Ltd | Unidad de inclinacion electrica remota, estacion base y metodo para gestionar antena de inclinacion electrica remota. |
| CN111211848B (zh) * | 2020-01-07 | 2022-07-08 | 中天通信技术有限公司 | 一种天线电调单元的自动测试方法、系统及相关组件 |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN1905399A (zh) * | 2006-08-08 | 2007-01-31 | 华为技术有限公司 | 一种实现2g网络电调天线集中控制的方法及系统 |
| CN101827374A (zh) * | 2009-12-31 | 2010-09-08 | 中兴通讯股份有限公司 | 用于管理电调天线的操作维护系统、控制器和射频子系统 |
| US20110237315A1 (en) * | 2010-03-26 | 2011-09-29 | Kathrein-Werke Kg | Multi-beam-shaping structure |
| CN102780090A (zh) * | 2012-07-24 | 2012-11-14 | 华为技术有限公司 | 一种电调天线以及控制方法、系统 |
| CN103414020A (zh) * | 2013-07-26 | 2013-11-27 | 上海华为技术有限公司 | 一种天线阵列控制装置、方法以及系统 |
Family Cites Families (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP2469790B1 (fr) * | 2010-12-31 | 2016-03-30 | Huawei Technologies Co., Ltd. | Procédé, combineur et système de transmission de signaux |
-
2014
- 2014-07-18 CN CN201480012516.6A patent/CN105517667B/zh active Active
- 2014-07-18 EP EP14897554.3A patent/EP3157099A4/fr not_active Ceased
- 2014-07-18 WO PCT/CN2014/082560 patent/WO2016008164A1/fr active Application Filing
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2017
- 2017-01-17 US US15/407,495 patent/US9899735B2/en active Active
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN1905399A (zh) * | 2006-08-08 | 2007-01-31 | 华为技术有限公司 | 一种实现2g网络电调天线集中控制的方法及系统 |
| CN101827374A (zh) * | 2009-12-31 | 2010-09-08 | 中兴通讯股份有限公司 | 用于管理电调天线的操作维护系统、控制器和射频子系统 |
| US20110237315A1 (en) * | 2010-03-26 | 2011-09-29 | Kathrein-Werke Kg | Multi-beam-shaping structure |
| CN102780090A (zh) * | 2012-07-24 | 2012-11-14 | 华为技术有限公司 | 一种电调天线以及控制方法、系统 |
| CN103414020A (zh) * | 2013-07-26 | 2013-11-27 | 上海华为技术有限公司 | 一种天线阵列控制装置、方法以及系统 |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP3157099A4 * |
Also Published As
| Publication number | Publication date |
|---|---|
| CN105517667A (zh) | 2016-04-20 |
| EP3157099A4 (fr) | 2017-06-07 |
| US20170125898A1 (en) | 2017-05-04 |
| CN105517667B (zh) | 2018-10-09 |
| US9899735B2 (en) | 2018-02-20 |
| EP3157099A1 (fr) | 2017-04-19 |
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